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    • 64. 发明申请
    • Plasma display device
    • 等离子显示装置
    • US20070126360A1
    • 2007-06-07
    • US11634105
    • 2006-12-06
    • Yasunobu HashimotoNobuhiro IwaseTomokatsu KishiMasayuki Shibata
    • Yasunobu HashimotoNobuhiro IwaseTomokatsu KishiMasayuki Shibata
    • H01J17/49
    • H01J11/12G09G3/2932G09G2310/0218H01J2211/361H01J2211/38
    • A small-sized full HD plasma display device with high luminance is to be provided. The plasma display device according to the present invention comprises: first and second substrates; first and second electrodes formed on the first substrate so as to generate sustain discharge on the first substrate; and third electrodes formed on the second substrate so as to generate address discharge with the second electrodes, wherein the first to third electrodes form one pixel including cells of R, G and B, display of 1920×1080 pixels can be made, a length of a diagonal line of a display screen is shorter than 132 cm, an interlace drive is used, almost half of the third electrodes are connected to a drive circuit from an upper side of a panel, and the rest of the third electrodes are connected to the drive circuit from a lower side of the panel.
    • 提供具有高亮度的小尺寸全高清等离子体显示装置。 根据本发明的等离子体显示装置包括:第一和第二基板; 第一和第二电极,形成在第一基板上,以在第一基板上产生维持放电; 以及形成在第二基板上的第三电极,以便产生与第二电极的寻址放电,其中第一至第三电极形成包括R,G和B的单元的一个像素,可以显示1920×1080像素的长度, 显示屏的线路短于132cm,使用隔行驱动器,几乎一半的第三电极从面板的上侧连接到驱动电路,并且其余的第三电极连接到驱动电路 从面板的下侧。
    • 66. 发明授权
    • Data conversion method for displaying an image
    • 用于显示图像的数据转换方法
    • US06853359B2
    • 2005-02-08
    • US09804033
    • 2001-03-13
    • Yasunobu Hashimoto
    • Yasunobu Hashimoto
    • H04N5/66G09G3/20G09G3/28G09G3/296
    • G09G3/2029G09G3/2803G09G2320/0247G09G2320/0261G09G2320/0266
    • A data conversion method for displaying an image is provided in which selection of a subframe expression for reducing pseudo contours is systematized, and the subframe expression is optimized automatically. The method comprises the steps of determining a light emission waveform in accordance with display frame data of plural frames containing the current frame and the previous frame, performing Fourier expansion of an error between the determined light emission waveform and a target light emission waveform defined by the original frame data corresponding to the determined light emission waveform, and setting the display frame data of the current frame so that a sum of error components with weights that are obtained by weighting each Fourier component.
    • 提供一种用于显示图像的数据转换方法,其中用于减少伪轮廓的子帧表达式的选择被系统化,并且子帧表达被自动优化。 该方法包括以下步骤:根据包含当前帧和前一帧的多个帧的显示帧数据确定发光波形,执行所确定的发光波形与由所确定的发光波形定义的目标发光波形之间的误差的傅里叶扩展 对应于所确定的发光波形的原始帧数据,并且设置当前帧的显示帧数据,使得具有通过对每个傅立叶分量进行加权而获得的权重的误差分量之和。
    • 69. 发明授权
    • Method for driving a plasma display panel
    • 驱动等离子体显示面板的方法
    • US06249087B1
    • 2001-06-19
    • US09560870
    • 2000-04-28
    • Kunio TakayamaKoichi SakitaYasushi YonedaKenji AwamotoYasunobu HashimotoKazuo YoshikawaTomokatsu Kishi
    • Kunio TakayamaKoichi SakitaYasushi YonedaKenji AwamotoYasunobu HashimotoKazuo YoshikawaTomokatsu Kishi
    • G09G310
    • G09G3/2927G09G3/296G09G2310/066
    • A plasma display panel that can enlarge the voltage margin and can realize a stable display is provided. The plasma display panel includes first and second display electrodes X, Y for generating surface discharge and address electrodes A that cross the display electrodes via a dielectric layer. In the preparation process of the addressing for forming charge distribution corresponding to display contents, charge forming and charge adjusting are performed. The charge forming generates wall voltage having the same polarity at the same kind of interelectrode of all cells constituting the screen, for three kinds of interelectrodes, an interelectrode XY between the display electrodes, an interelectrode XA between the first display electrode and the address electrode, and an interelectrode YA between the second display electrode and the address electrode. The charge adjusting decreases the wall voltage by applying an increasing voltage that increases continuously or step by step.
    • 提供了可以扩大电压裕度并可实现稳定显示的等离子体显示面板。 等离子体显示面板包括用于产生表面放电的第一和第二显示电极X,Y和经由电介质层与显示电极交叉的寻址电极A. 在对应于显示内容形成电荷分布的寻址的准备过程中,进行电荷形成和电荷调节。 电荷形成在构成屏幕的所有单元的相同种类的电极之间产生具有相同极性的壁电压,对于三种电极间,显示电极之间的电极间XY,第一显示电极和寻址电极之间的电极间XA, 以及第二显示电极和寻址电极之间的电极间YA。 电荷调整通过施加连续增加或逐步增加的电压来降低壁电压。